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Diagnosing the influence of diabatic processes on the explosive deepening of extratropical cyclones

机译:诊断非绝热过程对温带气旋爆发性加深的影响

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摘要

A novel version of the classical surface pressure tendency equation (PTE) is applied to ERA-Interim reanalysis data to quantitatively assess the contribution of diabatic processes to the deepening of extratropical cyclones relative to effects of temperature advection and vertical motions. The five cyclone cases selected, Lothar and Martin in December 1999, Kyrill in January 2007, Klaus in January 2009, and Xynthia in February 2010, all showed explosive deepening and brought considerable damage to parts of Europe. For Xynthia, Klaus and Lothar diabatic processes contribute more to the observed surface pressure fall than horizontal temperature advection during their respective explosive deepening phases, while Kyrill and Martin appear to be more baroclinically driven storms. The powerful new diagnostic tool presented here can easily be applied to large numbers of cyclones and will help to better understand the role of diabatic processes in future changes in extratropical storminess.
机译:将经典表面压力趋势方程(PTE)的新版本应用于ERA-Interim重新分析数据,以定量评估绝热过程相对于温度对流和垂直运动的影响对温带气旋加深的贡献。选定的5个气旋案例分别是1999年12月的Lothar和Martin,2007年1月的Kyrill,2009年1月的Klaus和2010年2月的Xynthia,都显示出爆炸性的加深并给欧洲部分地区带来了相当大的破坏。对于Xynthia,在各自的爆炸性加深阶段,Klaus和Lothar的非绝热过程对观测到的表面压力下降的贡献要大于水平温度对流,而Kyrill和Martin似乎是斜压驱动的风暴。此处介绍的功能强大的新诊断工具可以轻松地应用于大量旋风,并将有助于更好地了解非绝热过程在温带暴风雨未来变化中的作用。

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